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Design and fabrication of a (β+α″) dual-phase Ti-Nb-Sn alloy with linear deformation behavior for biomedical applications

  • Shun Guo*
  • , Yulu Shi
  • , Guanglei Liu
  • , Ruitang Wu
  • , Rui Luo
  • , Ching Tun Peng
  • , Qingkun Meng
  • , Xiaonong Cheng
  • , Xinqing Zhao
  • *Corresponding author for this work
  • Jiangsu University
  • Beihang University
  • China University of Mining and Technology

Research output: Contribution to journalArticlepeer-review

Abstract

In this study, a (β+α″) dual-phase Ti-33Nb-4Sn alloy was successfully fabricated by a designated severe cold rolling plus pre-deformation (CRP) treatment to display a linear deformation behavior. Upon CRP treatment, a high density of dislocation tangles and grain refinement were induced into the Ti-33Nb-4Sn alloy consisting mainly of α″ martensite as well as some retained β parent phase. Due to the retardation effect of dislocations and grain boundaries on martensitic transformation, the slight stress induced martensitic (SIM) transformation from β to α″ in CRP Ti-33Nb-4Sn alloy covered a wide stress range during loading, together with the linear elastic deformation behavior of β and α″ phases. In such a case, the (β+α″) dual-phase Ti-33Nb-4Sn alloy exhibited macroscopically linear deformation behavior before yielding. Our results might shed light on design and development of novel (β+α″) dual-phase Ti-based alloy with linear deformation behavior for biomedical applications.

Original languageEnglish
Pages (from-to)517-521
Number of pages5
JournalJournal of Alloys and Compounds
Volume805
DOIs
StatePublished - 15 Oct 2019

Keywords

  • Dual-phase
  • Linear deformation
  • Titanium alloys
  • β and α″ phases

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